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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Performance and Aging of Mn/MnO2 as an Environmentally Friendly Energetic Time Delay Composition
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Performance and Aging of Mn/MnO2 as an Environmentally Friendly Energetic Time Delay Composition

机译:Mn / MnO2作为环境友好型高能时延组合物的性能和老化

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摘要

The Mn/MnO2 reactive system was investigated as a suitable replacement for the traditional W/BaCrO4/KClO4/diatomaceous earth delay composition. The delay performance, ignition sensitivity, and aging characteristics were examined in aluminum microchannels similar in diameter to common delay housings (4.7 mm). Stoichiometries with measured combustion temperatures between 1358 and 2113 K were self-sustaining with combustion velocities ranging from 2.4 to 7.3 mm s~(-1). The Mn/MnO2 system produced less gas than W/BaCrO4/KClO4/diatomaceous earth compositions allowing consideration for use in sealed delay housings. Accelerated aging at 70 °C and 30% relative humidity for 8 weeks resulted in no measurable loss of performance. Safety characterization showed that this composition is not sensitive to ignition by friction or electrostatic stimuli. The combustion products (as determined by X-ray diffraction) appear to be benign based on current regulations. Therefore, the Mn/MnO2 system appears to be a suitable low gas-producing, nonsensitive, less toxic delay composition with good longevity.
机译:研究了Mn / MnO2反应体系,以替代传统的W / BaCrO4 / KClO4 /硅藻土延迟成分。在直径类似于普通延迟罩(4.7毫米)的铝微通道中检查了延迟性能,点火灵敏度和老化特性。测得的燃烧温度在1358和2113 K之间的化学计量比是自持的,燃烧速度在2.4到7.3 mm s〜(-1)之间。 Mn / MnO2系统产生的气体少于W / BaCrO4 / KClO4 /硅藻土成分,因此考虑用于密封延迟外壳中。在70°C和30%相对湿度下加速老化8周不会导致可测量的性能损失。安全性表征表明该组合物对摩擦或静电刺激引起的点燃不敏感。根据现行法规,燃烧产物(通过X射线衍射确定)似乎是良性的。因此,Mn / MnO 2系统似乎是合适的低气体产生,不敏感,毒性较小的延迟组合物,具有长寿命。

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